Because wear is one of the most common reasons for the failure of metals, the development of a low-cost coating with enhanced wear resistance is of great importance. In the present study, Fe–Si–Al coatings with superior and stable wear resistance were prepared by laser cladding Fe–Si–Al industrial waste onto 1045 carbon steel. The microstructure, as well as the wear mechanism of the Fe–Si–Al coatings, was investigated. The Fe–Si–Al coatings consist of a (Al, Fe, Si) solid solution phase in both columnar grain form and equiaxed grain form. The Fe–Si–Al coatings possess enhanced microhardness of 494 ± 15 HV0.3 and low mass loss of 5 × 10−5 mg·(N·m)&mi...
The usage of aluminum in the automobile industry has been significantly increasing but they have poo...
Fe-based metallic glass forming powders have been deposited on mild steel substrates using high powe...
Iron-based coatings are often considered as replacement of hard chromium and WC-Co, as they pose low...
In order to improve the wear properties of FeCoCrNi high entropy alloy (HEA), laser cladding was app...
An Fe6AlCoCrNi medium-entropy (MEA) coating was coated on a steel substrate by laser cladding. The m...
In the present study, an attempt has been made to explore deposition of Fe-based amorphous/glassy la...
FeCoCrNiMo high-entropy alloy (HEA) has attracted great interests due to its excellent corrosion res...
In this study, three wear/corrosion-protective Fe-base alloys with different strengthening mechanism...
In this study, three wear/corrosion-protective Fe-base alloys with different strengthening mechanism...
A comparative study of the abrasive wear behaviour has been conducted on several tool steel coatings...
The work is based on the dry sliding wear of NiCrBSi coatings deposited on the plates of grey cast i...
The effect of laser cladding on the surface microstructure and corrosion properties of coated/uncoat...
Surface modification of engineering materials using lasers by means of alloying and cladding have op...
A novel amorphous composite coating was synthesized successfully on 3Cr13 stainless steel by laser c...
Al12Si–NbC composite coatings were deposited by laser cladding on a substrate of Al–7Si alloy. The m...
The usage of aluminum in the automobile industry has been significantly increasing but they have poo...
Fe-based metallic glass forming powders have been deposited on mild steel substrates using high powe...
Iron-based coatings are often considered as replacement of hard chromium and WC-Co, as they pose low...
In order to improve the wear properties of FeCoCrNi high entropy alloy (HEA), laser cladding was app...
An Fe6AlCoCrNi medium-entropy (MEA) coating was coated on a steel substrate by laser cladding. The m...
In the present study, an attempt has been made to explore deposition of Fe-based amorphous/glassy la...
FeCoCrNiMo high-entropy alloy (HEA) has attracted great interests due to its excellent corrosion res...
In this study, three wear/corrosion-protective Fe-base alloys with different strengthening mechanism...
In this study, three wear/corrosion-protective Fe-base alloys with different strengthening mechanism...
A comparative study of the abrasive wear behaviour has been conducted on several tool steel coatings...
The work is based on the dry sliding wear of NiCrBSi coatings deposited on the plates of grey cast i...
The effect of laser cladding on the surface microstructure and corrosion properties of coated/uncoat...
Surface modification of engineering materials using lasers by means of alloying and cladding have op...
A novel amorphous composite coating was synthesized successfully on 3Cr13 stainless steel by laser c...
Al12Si–NbC composite coatings were deposited by laser cladding on a substrate of Al–7Si alloy. The m...
The usage of aluminum in the automobile industry has been significantly increasing but they have poo...
Fe-based metallic glass forming powders have been deposited on mild steel substrates using high powe...
Iron-based coatings are often considered as replacement of hard chromium and WC-Co, as they pose low...